navidrome/persistence/sql_annotations.go
Deluan Quintão b293b96256
refactor(persistence): stateless repositories with per-call context (#6149)
* refactor(persistence): adopt generic deluan/rest repository API

Pin deluan/rest to the refactor branch. REST-facing repository methods
take a context and return typed values. Drop DataStore.Resource and
ResourceRepository; the native API names typed repositories directly
through a per-request adapter that later commits remove.

* refactor(persistence): base repository helpers take a context

* refactor(persistence): LibraryRepository takes a context per call

* refactor(persistence): PropertyRepository takes a context per call

* refactor(persistence): UserPropsRepository takes a context per call

* refactor(persistence): TranscodingRepository takes a context per call

* refactor(persistence): ShareRepository takes a context per call

* refactor(persistence): PlayerRepository takes a context per call

* refactor(persistence): RadioRepository takes a context per call

* refactor(persistence): PlayQueueRepository takes a context per call

* refactor(persistence): Tag and Genre repositories take a context per call

* refactor(persistence): PluginRepository takes a context per call

* refactor(persistence): Scrobble repositories take a context per call

* refactor(persistence): FolderRepository takes a context per call

* refactor(persistence): Artwork repositories take a context per call

* refactor(persistence): UserRepository takes a context per call

* refactor(persistence): ArtistRepository takes a context per call

ReadAll no longer rewrites the shared sort mappings for the role filter;
it works on a per-call copy.

* test(persistence): assert artist role sort sanitization in ReadAll

* refactor(persistence): AlbumRepository takes a context per call

* test(persistence): pass the test context to album repository helpers

* refactor(persistence): MediaFileRepository takes a context per call

* refactor(persistence): Playlist repositories take a context per call

* refactor(persistence): build all repositories once per store

* refactor(core): REST repository wrappers are built once

* refactor(persistence): repositories are stateless

Remove the context field from the base repository and the per-request
REST adapter. Enable the containedctx linter so no repository can hold a
request context again.

* chore(lint): skip containedctx in test files

* refactor: share simplifications from the stateless repositories sweep

Add deleteOwnedAll on sqlRepository and use it in player/share Delete
to remove the duplicated bulk-delete loop; have Share.Repository()
return model.ShareRepository so subsonic sharing.go drops its repeated
type assertions.

* chore(core): assert REST wrappers implement Persistable

* chore: reformat imports

* perf(persistence): build repositories on first use

Each transaction store used to construct all 21 repositories up front,
paying for filter and sort mapping setup the block never touched. Fields
are now sync.OnceValue thunks, so a store only builds what it uses.

* fix(persistence): clean plugin references per deleted user

A bulk user delete that fails on a later id had already removed the
earlier rows but skipped their plugin cleanup. Cleanup now runs right
after each successful delete.

* fix(core): unload disabled plugins even when a user delete fails

A bulk delete can fail on a later id after earlier users were removed
and their plugins auto-disabled. The wrapper returned before unloading,
leaving those plugins running until the next successful delete or a
restart.

* chore(deps): pin deluan/rest to v1.0.1

Replaces the pseudo-version of the refactor branch with the tagged
release. REST error messages now name the bare type (Artist, not
model.Artist).

* test: use the spec context instead of context.Background()

Replace the context.Background()/context.TODO() calls this branch added
to tests with the spec's ctx, GinkgoT().Context(), or t/b.Context(), so
repository calls are bound to the running spec's lifetime.

* test: declare the spec context once per Describe

Set ctx from GinkgoT().Context() first in each top-level BeforeEach and reuse it, building user contexts on top of it instead of repeating inline calls.
2026-09-25 18:06:10 -04:00

209 lines
6.7 KiB
Go

package persistence
import (
"context"
"database/sql"
"errors"
"fmt"
"regexp"
"sort"
"strings"
"sync"
"time"
. "github.com/Masterminds/squirrel"
"github.com/fatih/structs"
"github.com/navidrome/navidrome/conf"
"github.com/navidrome/navidrome/consts"
"github.com/navidrome/navidrome/log"
"github.com/navidrome/navidrome/model"
)
const annotationTable = "annotation"
// annotationColumns are the columns withAnnotation's LEFT JOIN contributes, derived from
// model.Annotations so the set tracks schema changes. average_rating is excluded: it lives on the
// base table, not the annotation join.
var annotationColumns = sync.OnceValue(func() map[string]struct{} {
cols := map[string]struct{}{}
for name := range structs.Map(model.Annotations{}) {
if name == "average_rating" {
continue
}
cols[name] = struct{}{}
}
return cols
})
// annotationColumnRE matches any annotation column as a whole word. The word boundaries keep the
// base-table column average_rating from matching the annotation column rating (Go's \b treats '_'
// as a word char). It is case-insensitive because SQLite column names are, so a raw filter using
// e.g. "RATING" must still be detected.
var annotationColumnRE = sync.OnceValue(func() *regexp.Regexp {
cols := make([]string, 0, len(annotationColumns()))
for col := range annotationColumns() {
cols = append(cols, regexp.QuoteMeta(col))
}
sort.Strings(cols) // map iteration is random; sort for a stable pattern
return regexp.MustCompile(`(?i)\b(?:` + strings.Join(cols, "|") + `)\b`)
})
// filtersNeedAnnotation reports whether the rendered query references an annotation column, i.e.
// whether the annotation LEFT JOIN must be kept. Scanning the rendered SQL catches every filter
// path. The placeholder column is needed because squirrel won't render a column-less SELECT; on a
// render error, keep the join to be safe.
func filtersNeedAnnotation(query SelectBuilder) bool {
sql, _, err := query.Columns("1").ToSql()
if err != nil {
return true
}
return annotationColumnRE().MatchString(sql)
}
func (r sqlRepository) withAnnotation(ctx context.Context, query SelectBuilder, idField string) SelectBuilder {
userID := loggedUser(ctx).ID
if userID == invalidUserId {
return query.Columns(fmt.Sprintf("%s.average_rating", r.tableName))
}
query = query.
LeftJoin("annotation on ("+
"annotation.item_id = "+idField+
" AND annotation.item_type = ?"+
" AND annotation.user_id = ?)", r.tableName, userID).
Columns(
"coalesce(starred, 0) as starred",
"coalesce(rating, 0) as rating",
"starred_at",
"play_date",
"rated_at",
)
if conf.Server.AlbumPlayCountMode == consts.AlbumPlayCountModeNormalized && r.tableName == "album" {
query = query.Columns(
fmt.Sprintf("round(coalesce(round(cast(play_count as float) / coalesce(%[1]s.song_count, 1), 1), 0)) as play_count", r.tableName),
)
} else {
query = query.Columns("coalesce(play_count, 0) as play_count")
}
query = query.Columns(fmt.Sprintf("%s.average_rating", r.tableName))
return query
}
func annotationBoolFilter(field string) func(string, any) Sqlizer {
return func(_ string, value any) Sqlizer {
v, ok := value.(string)
if !ok {
return nil
}
if strings.ToLower(v) == "true" {
return Expr(fmt.Sprintf("COALESCE(%s, 0) > 0", field))
}
return Expr(fmt.Sprintf("COALESCE(%s, 0) = 0", field))
}
}
func (r sqlRepository) annId(ctx context.Context, itemID ...string) And {
userID := loggedUser(ctx).ID
return And{
Eq{annotationTable + ".user_id": userID},
Eq{annotationTable + ".item_type": r.tableName},
Eq{annotationTable + ".item_id": itemID},
}
}
func (r sqlRepository) annUpsert(ctx context.Context, values map[string]any, itemIDs ...string) error {
upd := Update(annotationTable).Where(r.annId(ctx, itemIDs...))
for f, v := range values {
upd = upd.Set(f, v)
}
c, err := r.executeSQL(ctx, upd)
if c == 0 || errors.Is(err, sql.ErrNoRows) {
userID := loggedUser(ctx).ID
for _, itemID := range itemIDs {
values["user_id"] = userID
values["item_type"] = r.tableName
values["item_id"] = itemID
ins := Insert(annotationTable).SetMap(values)
_, err = r.executeSQL(ctx, ins)
if err != nil {
return err
}
}
}
return err
}
func (r sqlRepository) SetStar(ctx context.Context, starred bool, ids ...string) error {
starredAt := time.Now()
return r.annUpsert(ctx, map[string]any{"starred": starred, "starred_at": starredAt}, ids...)
}
func (r sqlRepository) SetRating(ctx context.Context, rating int, itemID string) error {
ratedAt := time.Now()
err := r.annUpsert(ctx, map[string]any{"rating": rating, "rated_at": ratedAt}, itemID)
if err != nil {
return err
}
return r.updateAvgRating(ctx, itemID)
}
func (r sqlRepository) updateAvgRating(ctx context.Context, itemID string) error {
upd := Update(r.tableName).
Where(Eq{"id": itemID}).
Set("average_rating", Expr(
"coalesce((select round(avg(rating), 2) from annotation where item_id = ? and item_type = ? and rating > 0), 0)",
itemID, r.tableName,
))
_, err := r.executeSQL(ctx, upd)
return err
}
func (r sqlRepository) IncPlayCount(ctx context.Context, itemID string, ts time.Time) error {
upd := Update(annotationTable).Where(r.annId(ctx, itemID)).
Set("play_count", Expr("play_count+1")).
Set("play_date", Expr("max(ifnull(play_date,''),?)", ts))
c, err := r.executeSQL(ctx, upd)
if c == 0 || errors.Is(err, sql.ErrNoRows) {
userID := loggedUser(ctx).ID
values := map[string]any{}
values["user_id"] = userID
values["item_type"] = r.tableName
values["item_id"] = itemID
values["play_count"] = 1
values["play_date"] = ts
ins := Insert(annotationTable).SetMap(values)
_, err = r.executeSQL(ctx, ins)
if err != nil {
return err
}
}
return err
}
func (r sqlRepository) ReassignAnnotation(ctx context.Context, prevID string, newID string) error {
if prevID == newID || prevID == "" || newID == "" {
return nil
}
// OR IGNORE keeps newID's own row where a user annotated both, instead of aborting the whole statement
upd := Expr("update or ignore "+annotationTable+" set item_id = ? where item_type = ? and item_id = ?",
newID, r.tableName, prevID)
if _, err := r.executeSQL(ctx, upd); err != nil {
return err
}
// The moved rows change newID's rating population, so its cached average no longer matches
return r.updateAvgRating(ctx, newID)
}
func (r sqlRepository) cleanAnnotations(ctx context.Context) error {
del := Delete(annotationTable).Where(Eq{"item_type": r.tableName}).Where("item_id not in (select id from " + r.tableName + ")")
c, err := r.executeSQL(ctx, del)
if err != nil {
return fmt.Errorf("error cleaning up %s annotations: %w", r.tableName, err)
}
if c > 0 {
log.Debug(ctx, "Clean-up annotations", "table", r.tableName, "totalDeleted", c)
}
return nil
}